首页> 外文期刊>Journal of Real-Time Image Processing >Real-time underwater image enhancement: a systematic review
【24h】

Real-time underwater image enhancement: a systematic review

机译:实时水下图像增强:系统评价

获取原文
获取原文并翻译 | 示例

摘要

In recent years, deep sea and ocean explorations have attracted more attention in the marine industry. Most of the marine vehicles, including robots, submarines, and ships, would be equipped with automatic imaging of deep sea layers. There is a reason which the quality of the images taken by the underwater devices is not optimal due to water properties and impurities. Consequently, water absorbs a series of colors, so processing gets more difficult. Scattering and absorption are related to underwater imaging light and are called light attenuation in water. The examination has previously shown that the emergence of some inherent limitations is due to the presence of artifacts and environmental noise in underwater images. As a result, it is hard to distinguish objects from their backgrounds in those images in a real-time system. This paper discusses the effect of the software and hardware parts for the underwater image, surveys the state-of-art different strategies and algorithms in underwater image enhancement, and measures the algorithm performance from various aspects. We also consider the important conducted studies on the field of quality enhancement in underwater images. We have analyzed the methods from five perspectives: (a) hardware and software tools, (b) a variety of underwater imaging techniques, (c) improving real-time image quality, (d) identifying specific objectives in underwater imaging, and (e) assessments. Finally, the advantages and disadvantages of the presented real/non-real-time image processing techniques are addressed to improve the quality of the underwater images. This systematic review provides an overview of the major underwater image algorithms and real/non-real-time processing.
机译:近年来,深海和海洋探索在海洋工业中受到更多关注。大多数船用车辆,包括机器人,潜艇和船舶,都将配备深海层的自动成像。由于水性质和杂质,水下装置拍摄的图像的质量不适。因此,水吸收一系列颜色,因此加工变得更加困难。散射和吸收与水下成像光有关,并称为水中的光衰减。检查前面表明,一些固有局限性的出现是由于水下图像中的伪影和环境噪声的存在。结果,很难将物体与实时系统中的那些图像中的这些图像区分开来。本文讨论了软件和硬件零件对水下图像的影响,调查水下图像增强中的最先进的不同策略和算法,并测量各种方面的算法性能。我们还考虑到水下图像质量增强领域的重要研究。我们已经分析了五个观点的方法:(a)硬件和软件工具,(b)各种水下成像技术,(c)改善实时图像质量,(d)识别水下成像中的特定目标,并(例如)评估。最后,解决了所呈现的真实/非实时图像处理技术的优点和缺点以提高水下图像的质量。该系统审查提供了主要的水下图像算法和实际/非实时处理的概述。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号